Fractional calculus has been used to model physical and engineering processes that are found to be best described by fractional differential equations. For that reason we need a reliable and efficient technique for the solution of fractional differential equations. This paper deals with the numerica
β¦ LIBER β¦
Solving the fractional order Bloch equation
β Scribed by Richard Magin; Xu Feng; Dumitru Baleanu
- Publisher
- John Wiley and Sons
- Year
- 2009
- Tongue
- English
- Weight
- 151 KB
- Volume
- 34A
- Category
- Article
- ISSN
- 1546-6086
No coin nor oath required. For personal study only.
π SIMILAR VOLUMES
A new operational matrix for solving fra
β
Abbas Saadatmandi; Mehdi Dehghan
π
Article
π
2010
π
Elsevier Science
π
English
β 848 KB
On a numerical scheme for solving differ
β
T.M. Atanackovic; B. Stankovic
π
Article
π
2008
π
Elsevier Science
π
English
β 272 KB
Fractional high order methods for the no
β
R. Lin; F. Liu
π
Article
π
2007
π
Elsevier Science
π
English
β 863 KB
Solving a fourth-order fractional diffus
β
Hossein Jafari; Mehdi Dehghan; Khosro Sayevand
π
Article
π
2008
π
John Wiley and Sons
π
English
β 388 KB
On the solution of nonlinear fractional
β
Cheng Yu; Guozhu Gao
π
Article
π
2005
π
Elsevier Science
π
English
β 103 KB
This paper investigates the uniqueness and dependence of the solution of nonlinear differential equation with fractional order by the fixed-points theorem. The obtained results include naturally those in open literature for some special cases, and a numerical approach to the discussed problem is sug
Semilinear ordinary differential equatio
β
Teodor M. Atanackovic; Ljubica Oparnica; Stevan PilipoviΔ
π
Article
π
2010
π
Elsevier Science
π
English
β 435 KB